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Inelastic Behaviour of Structures under Variable Loads

✍ Scribed by Zenon Mróz, Piotr Rodzik (auth.), Zenon Mróz, Dieter Weichert, Stanislaw Dorosz (eds.)


Publisher
Springer Netherlands
Year
1995
Tongue
English
Leaves
500
Series
Solid Mechanics and Its Applications 36
Edition
1
Category
Library

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✦ Synopsis


This collection of papers is a state of the art presentation of theories and methods related to the problem of the behaviour of mechanical structures under variable loads beyond their elastic limit In particular, the problems of shakedown, ratchetting, transient and asymptotic cyclic states are addressed. The volume is composed of four chapters devoted to material modelling for cyclic loading conditions; general theory of accommodated states of structures; effects of changes of the geometry on the inelastic structural response; and numerical techniques with applications to particular engineering problems. It was aimed to provide a unified approach in order to understand both inelastic material and structural response under variable loading conditions. The attempt to extend the classical shakedown theory of Melan and Koiter to geometrically non-linear problems is presented in several papers. The industrial application of cyclic plasticity to the analysis and the design of pressure bellows, compensators, turbine disks, or flange connections under thermal and pressure cycles illustrates the great potential of the numerical techniques developed for this purpose using mostly min-max approaches. The treatment of railway problems and the analysis and optimisation of pavements are further examples of important areas of applications. Emphasis was laid on approaches that take into account the fact that loading histories are often not precisely known Therefore, the center of interest lies in other than step by step calculation methods.

✦ Table of Contents


Front Matter....Pages i-xvii
Front Matter....Pages 1-1
The Modified Multisurface Hardening Model and its Application to Cyclic Loading Problems....Pages 3-18
Structures Consisting of Two-Phase Materials Under Thermomechanical Loads....Pages 19-31
Shakedown for systems of kinematic hardening materials....Pages 33-50
Related Mathematical Models for Solids and Structures Deformation and Failure Processes Under Repeated Loading....Pages 51-81
Nonlinear Behavior of Low-Plastic Structures....Pages 83-91
Front Matter....Pages 93-93
Elastic-Viscoplastic Solids Subjected to Thermal and Loading Cycles....Pages 95-128
Some Basic Elements of the Shakedown Theory....Pages 129-152
A Variational Deduction of the Upper and Lower Bound Shakedown Theorems by Markov and Hill’s Principles Over a Cycle....Pages 153-167
Influence of Cyclic Creep on the Upper Bound to Shakedown Inelastic Deflections....Pages 169-181
On Shakedown Theorems in the Presence of Signorini Conditions and Friction....Pages 183-201
On Theorems of Adaptation of Elastic-Plastic Structures....Pages 203-218
Extremum Problems in Shakedown Theory....Pages 219-236
Front Matter....Pages 237-237
Geometric Effects on Shakedown and Ratchetting of Axisymmetric Cylindrical Shells Subjected to Variable Thermal Loading....Pages 239-262
Shakedown of Shells Undergoing Moderate Rotations....Pages 263-277
Limit, Shakedown, Post-Yield, and Inadaptation Analyses of Discrete Plastic Structures....Pages 279-291
Constitutive Model and Incremental Shakedown Analysis in Finite Elastoplasticity....Pages 293-307
Case Studies on the Influence of Geometric Effects on the Shakedown of Structures....Pages 309-320
Discussion of the Chaotic Behaviour of an Elastic-Plastic Structure....Pages 321-338
Front Matter....Pages 339-339
Inadaptation Mechanisms in Bellows Subject to Sustained Pressure and Cyclic Axial Loadings in Terms of Finite Deformations....Pages 341-361
Min-Max Approach to Shakedown and Limit Load Analysis for Elastic Perfectly Plastic and Kinematic Hardening Materials....Pages 363-380
Front Matter....Pages 339-339
An Indirect Incremental Method for Shakedown Analysis Based on the Min-Max Approach....Pages 381-398
Slackened Systems Under Variable Loads....Pages 399-417
Plastic Analysis and Design of Skeletal Structures Accounting for their Sensitivity to Ratchetting....Pages 419-432
Shakedown of Rail Corrugations....Pages 433-447
Steady Cyclic State of a Structure: Methods of its Direct Determination....Pages 449-461
An Improved Boundary Element Analysis for the Bending of a Thin Plate with a Crack....Pages 463-472
Stability of Pavement Structures Under Long Term Repeated Loading....Pages 473-496
Back Matter....Pages 497-502

✦ Subjects


Civil Engineering;Mechanics;Quality Control, Reliability, Safety and Risk


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